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通过正电子发射断层扫描(PET)测量猪体内¹¹C-蛋氨酸的肝脏代谢及¹¹C-蛋白的分泌。

Hepatic metabolism of C-methionine and secretion of C-protein measured by PET in pigs.

作者信息

Horsager Jacob, Lausten Susanne Bach, Bender Dirk, Munk Ole Lajord, Keiding Susanne

机构信息

Department of Nuclear Medicine and PET Centre, Aarhus University HospitalAarhus, Denmark.

Department of Abdominal Surgery, Aarhus University HospitalAarhus, Denmark.

出版信息

Am J Nucl Med Mol Imaging. 2017 Sep 1;7(4):167-173. eCollection 2017.

Abstract

Hepatic amino acid metabolism and protein secretion are essential liver functions that may be altered during metabolic stress, e.g. after surgery. We wished to develop a dynamic liver PET method using the radiolabeled amino acid C-methionine to examine this question. Eleven 40-kg pigs were allocated to either laparotomy or pneumoperitoneum. 24 hours after surgery a 70-min dynamic PET scanning of the liver with arterial blood sampling was performed immediately after intravenous injection of C-methionine. Time course of arterial plasma C-methionine concentration was used as input function and that of liver tissue C-concentration as output function in an extended Patlak analysis that accounted for irreversible metabolism of C-methionine (hepatic systemic metabolic clearance ) and secretion of C-protein + C-metabolites into blood (rate constant ). Appearance of C-proteins in arterial plasma was measured during the experiment. There were no statistically significant differences between the laparotomy group and the pneumoperitoneum group in any of the calculated parameters. Average mean hepatic systemic metabolic clearance was 0.212 mL plasma/mL liver tissue/min, secretion rate constant from liver to blood 0.0054 min, flux of methionine 3.59 μmol methionine/mL liver tissue/min, and the appearance rate of C-proteins in plasma 0.048 kBq/mL plasma/min. There was significant correlation between and . In conclusion, the hepatic systemic metabolic clearance of C-methionine was significantly correlated to the appearance rate of C-proteins in plasma. It would be interesting to translate the present method to human studies for the development of a clinical quantitative test of hepatic protein secretion.

摘要

肝脏氨基酸代谢和蛋白质分泌是肝脏的重要功能,在代谢应激期间(如手术后)可能会发生改变。我们希望开发一种使用放射性标记氨基酸碳-蛋氨酸的动态肝脏PET方法来研究这个问题。将11头40千克重的猪分为剖腹手术组或气腹组。手术后24小时,在静脉注射碳-蛋氨酸后立即进行70分钟的肝脏动态PET扫描并采集动脉血样。在扩展的Patlak分析中,将动脉血浆碳-蛋氨酸浓度的时间进程用作输入函数,将肝脏组织碳浓度的时间进程用作输出函数,该分析考虑了碳-蛋氨酸的不可逆代谢(肝脏全身代谢清除率)以及碳-蛋白质+碳代谢产物向血液中的分泌(速率常数)。在实验过程中测量动脉血浆中碳-蛋白质的出现情况。在任何计算参数方面,剖腹手术组和气腹组之间均无统计学显著差异。平均肝脏全身代谢清除率为0.212毫升血浆/毫升肝脏组织/分钟,从肝脏到血液的分泌速率常数为0.0054分钟,蛋氨酸通量为3.59微摩尔蛋氨酸/毫升肝脏组织/分钟,血浆中碳-蛋白质的出现率为0.048千贝克勒尔/毫升血浆/分钟。代谢清除率和出现率之间存在显著相关性。总之,碳-蛋氨酸的肝脏全身代谢清除率与血浆中碳-蛋白质的出现率显著相关。将本方法转化为人体研究以开发肝脏蛋白质分泌的临床定量检测将会很有意思。

相似文献

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Quantitative PET of liver functions.肝脏功能的定量正电子发射断层扫描
Am J Nucl Med Mol Imaging. 2018 Apr 25;8(2):73-85. eCollection 2018.

引用本文的文献

1
Quantitative PET of liver functions.肝脏功能的定量正电子发射断层扫描
Am J Nucl Med Mol Imaging. 2018 Apr 25;8(2):73-85. eCollection 2018.

本文引用的文献

2
Human splanchnic amino-acid metabolism.人类内脏氨基酸代谢。
Amino Acids. 2017 Jan;49(1):161-172. doi: 10.1007/s00726-016-2344-7. Epub 2016 Oct 6.

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